English

Reconstructing a $f(R)$ theory from the $\alpha$-Attractors

General Relativity and Quantum Cosmology 2017-10-09 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

We show an analogy at high curvature between a f(R)=R+aRn1+bR2f(R) = R + aR^{n - 1} + bR^2 theory and the α\alpha-Attractors. We calculate the expressions of the parameters aa, bb and nn as functions of α\alpha and the predictions of the model f(R)=R+aRn1+bR2f(R) = R + aR^{n - 1} + bR^2 on the scalar spectral index nsn_{\rm s} and the tensor-to-scalar ratio rr. We find that the power law correction Rn1R^{n - 1} allows for a production of gravitational waves enhanced with respect to the one in the Starobinsky model, while maintaining a viable prediction on nsn_{\rm s}. We numerically reconstruct the full α\alpha-Attractors class of models testing the goodness of our high-energy approximation f(R)=R+aRn1+bR2f(R) = R + aR^{n - 1} + bR^2. Moreover, we also investigate the case of a single power law f(R)=γR2δf(R) = \gamma R^{2 - \delta} theory, with γ\gamma and δ\delta free parameters. We calculate analytically the predictions of this model on the scalar spectral index nsn_{\rm s} and the tensor-to-scalar ratio rr and the values of δ\delta which are allowed from the current observational results. We find that 0.015<δ<0.016-0.015 < \delta < 0.016, confirming once again the excellent agreement between the Starobinsky model and observation.

Keywords

Cite

@article{arxiv.1707.06457,
  title  = {Reconstructing a $f(R)$ theory from the $\alpha$-Attractors},
  author = {T. Miranda and J. C. Fabris and O. F. Piattella},
  journal= {arXiv preprint arXiv:1707.06457},
  year   = {2017}
}

Comments

17 pages, 8 figures. V2: full numerical reconstruction in the appendix. Accepted for publication in JCAP